
Coil Pack mount.
thingiverse
I sought a mount offering flexibility, and after considerable testing, I'm pleased to report that it has withstood all challenges so far. The prototype was manufactured in ABS. It's primarily constructed using 3D printing techniques, which I coupled with acetone-based adhesives to bind its constituent parts together. Additional components were also employed: standard bolts for added structural integrity, an aluminum bushing for support and stability, and strategically placed washers to optimize load distribution. Print the individual components using settings optimized for maximum print quality, including perimeter lines set at 3mm thickness, a base layer height of 2mm, and a top layer thickness of 3mm. Furthermore, incorporating a honeycomb pattern with a density rating of 20% helps ensure exceptional structural integrity. Upon completing the printed parts, proceed to assemble them by carefully positioning the angle sections in conjunction with the base piece, utilizing acetone-based adhesive as a binding agent at precisely a 90-degree angle. The precision-cut components will naturally form a snug fit; however, it's crucial to allow some degree of freedom during this assembly phase to ensure smooth and seamless joining. Once these critical junctures are secured, apply gentle yet sustained pressure for roughly one minute or longer to reinforce the bond between each connected section. As a final step in the assembly process, connect the rear component to the rest of the framework by carefully adhering it in place using acetone slurry. One additional safeguard I took to prevent premature material failure and potential damage due to excessive tightening force involved strategically positioning an aluminum bush between bolt threads and ABS components.
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